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首页> 外文期刊>Journal of supercomputing >High-performance ECC processor architecture design for IoT security applications
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High-performance ECC processor architecture design for IoT security applications

机译:物联网安全应用的高性能ECC处理器架构设计

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In recent years, the usage of elliptic curve cryptography (ECC) in IoT applications is steadily increasing. The end nodes in IoT applications demand optimized device performance in terms of reduced power consumption and improved computing speed while not compromising on the security of the connected devices. ECC provides better security standards compared with many conventional cryptographic algorithms providing further scope to optimize the performance parameters. This work focuses on improving the key parameters like computing speed, area required for hardware implementation of ECC and demonstrates an efficient way of using the hardware resource sharing and scheduling mechanisms in elliptic curve group operations in affine coordinates which is crucial for implementation of scalar multiplication over prime field Fp. With the proposed scalar multiplication hardware architecture, we have achieved a good area-delay product and a significant reduction in cycle count when compared with other reported designs using the same affine coordinates. The proposed architecture has been implemented with 256 bits in both Xilinx Kintex-7 and Virtex-7 FPGA devices. The FPGA synthesis results show that a throughput of 68.52kbps at a clock frequency of 124.2MHz is achieved for F256 and the computation time is reduced around 1ms without using any DSP slices.
机译:近年来,在物联网应用中椭圆曲线密码学(ECC)的使用稳步增长。物联网应用中的终端节点需要在降低功耗和提高计算速度的同时优化设备性能,同时又不影响所连接设备的安全性。与许多传统的密码算法相比,ECC提供了更好的安全标准,从而提供了进一步的范围来优化性能参数。这项工作着重于改善关键参数,例如计算速度,ECC硬件实现所需的面积,并演示了在仿射坐标的椭圆曲线组操作中使用硬件资源共享和调度机制的有效方法,这对于实现标量乘法非常重要。素场Fp。与其他报告的使用相同仿射坐标的设计相比,借助拟议的标量乘法硬件体系结构,我们获得了良好的面积延迟乘积,并显着减少了循环计数。赛灵思Kintex-7和Virtex-7 FPGA器件均以256位实现了所建议的体系结构。 FPGA综合结果表明,在不使用任何DSP片的情况下,F256在124.2MHz的时钟频率下实现了68.52kbps的吞吐量,并且计算时间减少了大约1ms。

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